王群

副教授

基本情况

王群,安徽郎溪人,材料学博士,机械工程博士后,副教授,湖南大学材料摩擦磨损与表面工程技术研究所所长。研究方向:轻量化材料设计、制备、应用与表面防护(镁、铝、钛合金、钢铁表面防腐、耐磨和生物相容性涂层,CVD原位制备碳纳米管增强复合材料)。本研究所实验设备较完备,科研经费充足,与多家企业建立了长期的科研合作关系,开发的多项技术在企业获得了成功的应用,获省级科技进步奖3项。自2019年开始,所指导的研究生中有五名同学都获得国家奖学金和优秀研究生荣誉。欢迎报考研究生!电话:13787113453。

邮箱:13787113453@163.com.

教育及工作经历

1993.9-1997.7安徽机电学院 热加工工艺及设备 本科

2000.9-2003.4武汉理工大学 载运工具运用工程 硕士研究生

2004.9-2011.10湖南大学 材料学 博士研究生

2012.9-2014.12湖南大学 机械工程 博士后

2015.11-2016.11美国纽约州立大学石溪分校 访问学者

2003.3-湖南大学材料科学与工程学院,讲师,副教授

2012.9-2015.12湖南大学机械与运载工程学院(博士后)

2015.11-2016.12美国纽约州立大学石溪分校 热喷涂研究中心(访问学者)

科研项目

[1].高性能硬质合金烧结用接触陶瓷涂层制备,80万,2025.12.28-2027.12.28,主持。

[2].企业委托项目,氧化钇稳定氧化锆粉体和涂层相稳定性研究,14.35万,2025.6.28-2026.12.26,主持。

[3].企业委托项目,涂层抗泥沙磨损抗空蚀性能测试.,8.8万,2025.2.26-2026.2.26,主持。

[4].企业委托项目,热障涂层陶瓷层高温相稳定性研究技术合作,14万,2025.1.14-2025.12.14,主持。

[5].企业委托项目,陶瓷喷涂涂层工艺技术开发,20万,2024.7.14-2029.7.14,主持。

[6].企业委托项目,高性能耐磨防腐涂层的开发与应用,25万,2024.3.2-2027.5.2,主持。

[7].企业委托项目,陶瓷粉体性能测试与分析,9.1万,2023.9-2024.9,主持。

[8].湖南省自然科学基金面上项目,碳纳米管-铝复合粉末和相应冷喷涂涂层制备及组织性能调控,5万(2023JJ30153),2023.1-2025.12,主持。

[9].马鞍山智新纳米材料有限公司委托技术开发项目,耐磨涂层开发和组织性能研究,25万,2021.6-2024.5,主持。

[10].企事业单位委托项目,镁合金零件增材修复方法及性能评价技术研究,170万,2021.3-2024.9,主持。

[11].东方汽轮机有限公司委托项目,超音速火焰喷涂碳化钨基涂层滑动摩擦磨损性能研究,2.8万,2020.3-2021.7,主持。

[12].佛山企业委托技术开发项目,硬面涂层性能评价与开发,38万,2021/3/1-2024/3/1,主持。

[13].湖南省自然科学基金面上项目,新型合金碳化物涂层在多损伤作用下的服役行为和失效机理研究,10万,2019/1/1-2021/12/31,主持。

[14].无锡市福莱达石油机械有限公司委托技术开发项目,用于阀门的高性能涂层材料及相关智能加工装备和工艺的开发,50万,2019/1/8-2022/1/7,主持。

[15].长沙市科技计划重点项目,用于镁合金表面防护的铝合金复合涂层的研究与应用,2018/09/14-2021/12/31,15万元,主持。

[16].东方汽轮机有限公司委托项目,50MW燃机联体静叶长寿命高温涂层研制-性能测试,2020/04/14-2020/12/31,4.76万元,主持。

[17].四川省科技支撑计划项目(子课题),高品质碳化物基热喷涂材料开发与应用涂层性能测试,2017/10/25-2018/12/31,5.4万元,主持。

[18].企业委托技术开发项目,涂布刮刀涂层工艺优化和性能研究,2018/4/25-2021/1/24,50万元,主持。

[19].企业合作项目,201391480359,混凝土泵车弯管材料组织及性能研究,2013/09-2016/08,15万元,在研,主持

[20].湖南省科学计划项目,2013WK3027,双峰WC-10Co4Cr粉末与涂层制备及组织性能研究,2013/05-2014/05,3万元,已结题,主持

[21].企业合作项目,201291480030,低碳WC/Co涂层制备工艺优化及抗熔锌腐蚀性能研究,2011/11-2013/12,8万元,已结题,主持

[22].国家自然科学基金面上项目,51075132,基于滑移/孪生协调变形的本构模型及参数识别,2011/01-2013/12,39万元,已结题,参加

[23].国家自然科学基金面上项目,50974058,大尺寸有色合金多孔坯的楔压成形研究,2010/01-2012/12,35万元,已结题,参加

[24].多峰金属碳化钨粉末和涂层制备及相关机理研究,企业横向课题,已结题,主持

[25].挤出机螺杆材料耐磨及组织性能研究,企业横向课题,已结题,主持

[26].阀门防护涂层组织性能检测与分析,企业横向课题,已结题,主持

[27].瓦楞辊涂层制备工艺优化和组织,企业横向课题,已结题,主持

[28].金属基碳化钨涂层工艺参数优化及组织性能研究,企业横向课题,已结题,主持

[29].WC-12Co喷涂工艺参数优化及组织性能研究,企业横向课题,已结题,主持

[30].超音速火焰喷涂碳化钨基涂层及组织性能研究,企业横向课题,已结题,主持

[31].QPQ处理货运列车闸调器零件耐磨防腐性能研究,企业横向课题,已结题,主持

[32].超音速火焰喷涂WC-12Co涂层的组织性能研究,企业横向课题,已结题,主持

学术成果

主编的教材:

[1].王群,叶久新,塑料成型工艺及模具设计(第2版),机械工业出版社(国家"十一五"规划教材),2018.12.

[2].王群,童长清,模具专业英语,机械工业出版社, 2007.

[3].王群,AutoCAD2006基础教程,机械工业出版社, 2007.

发表论文

[1].Liu, Tao, Jiajun Li, Haifeng Li, Jianwu Liu, Yueyu Huang, Qun Wang*, and Chidambaram Seshadri Ramachandran. 2025. "Optimization of Preparation Process Parameters for HVOF-Sprayed WC-10Co-4Cr Coatings and Study of Abrasive and Corrosion Performances" Lubricants 13, no. 12: 516. https://doi.org/10.3390/lubricants13120516

[2]Yueyu Huang(研究生), Feng Liu, Yuan Zhong, Jianwu Liu, Haifeng Li, Limei Cha, Qun Wang*. Synergistic protective mechanisms of micro-arc oxidation and sealing treatments on cold-spray-repaired 2024Al surfaces with microstructural heterogeneity,Surface and Coatings Technology, 2025,132632, https://doi.org/10.1016/j.surfcoat.2025.132632.

[3].Zhihao Liu(研究生),Yingpeng Zhang,Yuan Zhong, Jianwu Liu, Haifeng Li, Limei Cha, Qun Wang*. The study of microstructure evolution and deposition kinetics simulation of cold sprayed 6061Al/AZ31Mg composite coatings.Journal of Alloys and Compounds. 2025,1035, 5.181642.

[4].Ruodi Tan(研究生), Haifeng Li,Jianwu Liu, Zizhao Wu, Qun Wang*,and Chidambaram Seshadri Ramachandran. Low-Temperature Fabrication of Carbon Nanotube-Aluminum Composite Powders via Rotary Chemical Vapor Deposition: Process Optimization and Growth Mechanism. Materials 2025, 18, 1654. hLps://doi.org/10.3390/ma18071654.

[5]Yuan Zhong(研究生),Yueyu Huang, Jianwu Liu, Haifeng Li, Zhihao Liu, Qun Wang*.The functionality of surface sealing treatment on super-sonic cold-sprayed &subsequently MAO-modified 6061-Al/ ZM6-Mg conjunct materials.Ceramics International, 2025.51(18):24397-24414.https://doi.org/10.1016/j.ceramint.2025.03.124.

[6]Yingpeng Zhang*, Chidambaram Seshadri Ramachandran, Qun Wang*,Dry sliding tribological characteristics of HVOF-WC/DLC duplex coating in the temperature range of RT-400 °C,Materials Today Communications, 2025112102,https://doi.org/10.1016/j.mtcomm.2025.112102.

[7]Yueyu Huang(研究生), Haifeng Li, Jianwu Liu, Zizhao Wu, Qun Wang*.Research Progress on Post-Treatment Technologies of Cold Spray Coatings. Coatings 2025, 2025,44,112102,https://doi.org/10.1016/j.mtcomm.2025.112102.

[8]Yuan Zhong(研究生),Zhihao Liu,Yingpeng Zhang, Limei Cha,Chidambaram Seshadri Ramachandran,Qun Wang*.Microstructural and interfacial characteristics of supersonic reclaimed 2024Al-T3 substrate using cold sprayed 2024Al deposit.Materials Characterization,2024, 215:114158 .

[9]Zhihao Liu(研究生), Jianwu Liu, Haifeng Li, Zizhao Wu, Yuan Zhong, Chidambaram Seshadri Ramachandran, Yingliang Cheng,* and Qun Wang* . Research Progress on Numerical Simulation of the Deposition and Deformation Behavior of Cold Spray Particles.Coatings 2024, 14(7), 913.

[10]Yuan Zhong(研究生), Yingpeng Zhang, Chidambaram Seshadri Ramachandran, Qun Wang*.Study on tribocorrosion properties of cold spray additively manufactured 2024 Al alloy. Corrosion science,233(2024)112109.

[11]Yingpeng Zhang, Sisi Luo, Yuan Zhong, Qun Wang*. Relative assessment of the microstructure, properties and bioactivity of 3D-printed and rolled Ti6Al4V with micro-arc oxidation (MAO) and hydrothermal (HT) treatment. Journal of Materials Research and Technology, 2023,27:4805-4811(https://doi.org/10.1016/j.jmrt.2023.11.020).

[12]Qun Wang*,Yuan Zhong ,Haifeng Li.Effect of Cobalt and Chromium Content on Microstructure and Properties of WC-Co-Cr Coatings Prepared by High-Velocity Oxy-Fuel Spraying.Materials 2023, 16(21), 7003; https://doi.org/10.3390/ma16217003.

[13]Yingpeng Zhang,Sisi Luo, Qun Wang*,Chidambaram Seshadri Ramachandran.Effect of hydrothermal treatment on the surface characteristics and bioactivity of HAP based MAO coating on Ti-6Al-4V alloy. Surface & Coatings Technology,464(2023),129566.

[14]王韶毅,邱晓来,王群*.低碳WC-12Co涂层制备工艺参数优化及熔锌腐蚀性能研究,材料保护,2023,11:63-68.

[15]李海峰,仲原,刘建武,汪义伟,王群*.气体温度对冷喷涂6061铝合金涂层组织和性能的影响,机械工程材料,2023,11:50-54.

[16]Qun Wang*, Bingbing Fang, Chenyu Liu, SiSi Tu, Limei Cha, Chidambaram Seshadri Ramachandran. Characterization of plasma electrolytic oxidation coatings containing carbon nanotubes formed on selective laser melted AlSi10Mg alloy.Surface & Coatings Technology 454 (2023) 129145.

[17]Yingpeng Zhang, Qun Wang,Chidambaram Seshadri Ramachandran,Peng Guo andAiying Wang.Microstructure and Performance of High-Velocity Oxygen-Fuel Coupled Physical Vapor Deposition (HVOF-PVD) Duplex Protective Coatings: A Review.Coatings 2022, 12(10), 1395.

[18]SisiTu(研究生), Qun Wang*,Chidambaram Seshadri Ramachandran. Parametric investigation of in-situ synthesis of carbon nanotubes on Al2O3 powder by the rotary chemical vapor deposition method.Ceramics International 48 (2022) 28258–28267.

[19]Qun Wang*,Sisi Tu,Yuqin Rao,Ramachandran Chidambaram Seshadri.The Influence of Polymeric Sealing Treatment on the Wear Performance of PEO Coating Deposited on AZ31 Mg Alloy.Coatings 2022, 12(2), 182.

[20]Yingpeng Zhang(研究生), Qun Wang*, Renfeng Ye, C. S. Ramachandran. Plasma Electrolytic Oxidation of Cold Spray Kinetically Metallized CNT-Al Coating on AZ91-Mg alloy: Evaluation of Mechanical and Surficial Characteristics. Journal of Alloys and Compounds, 2022, 892, 162094.

[21]王群,刘建武,李海峰,吴梓赵,饶宇琴.王海华.冷喷涂7075铝合金微观组织和力学性能研究.航空维修与工程.2021.12:37-41.

[22]Chenyu Liu(研究生),Qun Wang*,Xuanyang Cao, Limei Cha,Renfeng Ye, Chidambaram,Seshadri Ramachandran. Significance of Plasma Electrolytic Oxidation Treatment on Corrosion and Sliding Wear Performances of Selective Laser Melted AlSi10Mg Alloy. Materials Characterization,2021,181,111479.

[23]Yuqin Rao(研究生), Qun Wang*, Jin xiong Chen, Chidambaram Seshadri Ramachandran. Abrasion, sliding wear, corrosion, and cavitation erosion characteristics of a duplex coating formed on AZ31 Mg alloy by sequential application of cold spray and plasma electrolytic oxidation techniques,Materials Today Communications,2021,26,101978.

[24].Yingpeng Zhang(研究生), Qun Wang*, Gang Chen,et,al.Mechanical, tribological and corrosion physiognomies of CNT-Al metal matrix composite (MMC) coatings deposited by cold gas dynamic spray (CGDS) process.Surface and Coatings Technology.2020, 126380.

[25]Qun Wang, Yingpeng Zhang(研究生), Xiang Ding*, Shaoyi Wang,et al. Effect of WC Grain Size and Abrasive Type on the Wear Performance of HVOF-Sprayed WC-20Cr3C2-7Ni Coatings. Coatings, 2020,660.

[26]Yingpeng Zhang(研究生),Qun Wang*,Chidambaram SeshadriRamachandran. Synthesis of carbon nanotube reinforced aluminum composite powder (CNT-Al) by polymer pyrolysis chemical vapor deposition (PP-CVD) coupled high energy ball milling (HEBM) process.Diamond and Related Materials. 2020,107748.

[27]Yuqin Rao(研究生),Qun Wang*,Daisuke Oka,Chidambaram Seshadri Ramachandran.On the PEO treatment ofcold sprayed 7075 aluminum alloy and its effects on mechanical, corrosion and dry sliding wear performances thereof. Surface and Coatings Technology. 2020,383:1-13 .

[28]Sisi Luo(研究生)*, Qun Wang*, Renfen Ye, Chidambaram Seshadri Ramachandrand.Effects of electrolyte concentration on the microstructure and properties of plasma electrolytic oxidation coatings on Ti-6Al-4V alloy. Surface and Coatings Technology,2019,375:864-876.

[29]Qun Wang*, Sisi Luo(研究生), Shaoyi Wang, Hui Wang, Chidambaram Seshadri Ramachandrand. Wear, erosion and corrosion resistance of HVOF-sprayed WC and Cr3C2 based coatings for electrolytic hard chrome replacement. International Journal of Refractory Metals and Hard Materials, 2019, 81:242-252 .

[30]陈金雄(研究生),王群*,罗丝丝,谭兴龙.AZ31镁合金冷喷涂Al-Al2O3复合涂层组织及性能研究,中国有色金属学报, 2018,28(9):1720-1729 .

[31]Qun Wang*, Chidambaram Seshadri Ramachandran, Gregory M. Smith, Sanjay Sampath. Sliding wear behavior of air plasma sprayed Al2O3 coatings sealed with aluminum phosphate. Tribology International, 2017, 116:431-439.

[32]王群*,周小峰(研究生),陈金雄.HVOF制备的Ni60/WC-10Co4Cr涂层组织和滑动磨损性能研究.湖南大学学报(自然科学版),2018,45(6):90-96.

[33]Dingfa Fu, Haoqi Xiong, Qun Wang*. Microstructure Evolution and Its Effect on the Wear Performance of HVOF-Sprayed Conventional WC-Co Coating,Journal of Materials Engineering and Performance. 2016, 25(10):4352-4358.

[34]Qun Wang*, Zhaoxi Tang(研究生), Limei Cha. Cavitation and Sand Slurry Erosion Resistances of WC-10Co-4Cr Coatings. Journal of Materials Engineering and Performance. 2015, 24(6):2435-2443.

[35]王群*,屈帮荣(研究生),唐瞾肸,熊浩奇.超音速火焰喷涂碳化钨−钴涂层磨粒磨损行为.中国有色金属学报, 2015, 25(7):1920-1928

[36]Qun Wang*, Jing Xiang(研究生), Genyu Chena, Yingliang Cheng, Xinqi Zhao, Shiqi Zhang .Propylene flow, microstructure and performance of WC–12Co coatings using a gas-fuel HVOF spray process.Journal of Materials Processing Technology. 2013.4,213:1653– 1660.

[37]Qun Wang*,Shiying Zhang,Yingliang Cheng,Jing Xiang, Xinqi Zhao, Guibin Yang. Wear and corrosion performance of WC-10Co4Cr coatings deposited by different HVOF and HVAF spraying processes. Surface and Coatings Technology. 2013, 218:127-136.

[38]Qun Wang*,Luoxing Li,Guibin Yang, et.al.,Influence of heat treatment on the microstructure and performance of high-velocity oxy-fuel sprayed WC–12Co coatings. Surface and Coatings Technology. 2012,206(19-20):4000-4010.

[39]Qun Wang*,Zhenhua Chen,Luoxing Li,et.al.,The parameters optimization and abrasion wear mechanism of liquid fuel HVOF sprayed bimodal WC-12Co coating. Surface and Coatings Technology. 2012,206(8-9):2233-2241.

[40]王群*,向晶,伍细斌,等.细WC添加量对Ni基WC喷焊涂层性能的影响.湖南大学学报(自然科学版),2011,38(12):57 ~61.

[41]8. Zhangxiong Ding, Wei Chen, Qun Wang. Resistance of cavitation erosion of multimodal WC-12Co coatings sprayed by HVOF. Transactions of Nonferrous Metals Society of China,2011,21(10):2231-2236.

[42]王群*,唐智华,张永会,等。一种新型WC-12Co粉末喷涂工艺优化与涂层性能研究.热喷涂技术,2011,3(1):34-38

[43]Qun Wang*, Zhenhua Chen, Zhangxiong Ding, et al. Abrasive wear behaviour of WC reinforced Ni-based composite coating deposited by oxy-acetylene flame spraying weld process. Surface Review and Letters,2009,16(3):475-485.

[44]Q. Wang*, Z.H. Chen, Z.X. Ding. Performance of Abrasive Wear of WC-12Co Coatings Sprayed by HVOF. Tribology International,2009,42 (7):1046-1051 .

[45]王群*,陈振华,丁彰雄等.镍基WC喷焊涂层组织与磨损性能研究.《湖南大学学报》自然科学版.2009,36 (4):57-60.

[46]王群*,丁彰雄,陈振华等.枪管长度和喷涂距离对超音速火焰喷涂制备纳米WC-12Co涂层组织和硬度的影响.机械工程材料.2008,32 (9):9-12.

[47]Qun Wang*,Zhenhua Chen,Zhangxiong Ding,et al. Performance Study of slurry Abrasive Wear and erosion of Nanostructured WC-12Co Coatings Sprayed by HVOF,Proceed of IEEE international nanoelectronics conference 2008.

[48]王群*,丁彰雄 ,陈振华等.超音速火焰喷涂纳米结构涂层研究进展.表面技术,2007,36(2):42-46

发明专利

[1]王群,陈金雄,周小峰.一种热喷涂用金属陶瓷粉末的制备工艺,(发明专利,已授权:201710638263.9)

[2]王群,刘宸宇,饶宇琴.一种硬质颗粒增强铝合金管及其制备方法(发明专利,已授权:202010344791.5)

[3]王群,熊皓奇,屈帮荣.一种能自动控温的落球实验装置(发明专利,已授权:201410776451.4)

[4]杨贵彬,王群,张永会,王韶毅.一种新型WC-12Co热喷涂粉末及其制备工艺(发明专利,已授权:201110336004)

[5]朱芳勇,王群,肖学有.一种新型Cr3C2-NiCr热喷涂粉末及其制备工艺(发明专利,公开:201210061800.5)

奖励与荣誉

[1]2021浙江省科技进步二等奖(排名7)

[2]2020江西省科技进步二等奖(排名5)

[3]2020中国有色金属工业科技二等奖(排名2)

[4]湖南省科技进步二等奖(排名6)

[5]教育部科技成果二等奖(排名5)

[6]湖南省青年骨干教师

[7]湖南省青年教学能手

[8]《材料科学与工艺》期刊,2018,2020年度优秀审稿人

[9]《Journal of Thermal Spray Technology》期刊,2018,2019年度excellent reviewer

[10]《Journal of Thermal Spray Technology》期刊,2017年度outstanding reviewer

[11]《中国有色金属学报》中文版期刊,2018年优秀论文一等奖

[12]《材料科学与工艺》期刊2022年度优秀审稿人

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